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https://github.com/samba-team/samba.git
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7077ae4042
Signed-off-by: Andreas Schneider <asn@samba.org> Reviewed-by: Joseph Sutton <josephsutton@catalyst.net.nz>
297 lines
7.5 KiB
C
297 lines
7.5 KiB
C
/*
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Unix SMB/CIFS implementation.
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functions to calculate the free disk space
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Copyright (C) Andrew Tridgell 1998
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This program is free software; you can redistribute it and/or modify
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it under the terms of the GNU General Public License as published by
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the Free Software Foundation; either version 3 of the License, or
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(at your option) any later version.
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This program is distributed in the hope that it will be useful,
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but WITHOUT ANY WARRANTY; without even the implied warranty of
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MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the
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GNU General Public License for more details.
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You should have received a copy of the GNU General Public License
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along with this program. If not, see <http://www.gnu.org/licenses/>.
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*/
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#include "includes.h"
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#include "smbd/smbd.h"
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#include "smbd/globals.h"
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#include "lib/util_file.h"
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#include "lib/util/memcache.h"
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/****************************************************************************
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Normalise for DOS usage.
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****************************************************************************/
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static void disk_norm(uint64_t *bsize, uint64_t *dfree, uint64_t *dsize)
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{
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/* check if the disk is beyond the max disk size */
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uint64_t maxdisksize = lp_max_disk_size();
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if (maxdisksize) {
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/* convert to blocks - and don't overflow */
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maxdisksize = ((maxdisksize*1024)/(*bsize))*1024;
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if (*dsize > maxdisksize) {
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*dsize = maxdisksize;
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}
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if (*dfree > maxdisksize) {
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*dfree = maxdisksize - 1;
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}
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/* the -1 should stop applications getting div by 0
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errors */
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}
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}
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/****************************************************************************
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Return number of 1K blocks available on a path and total number.
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****************************************************************************/
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static uint64_t sys_disk_free(connection_struct *conn,
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struct smb_filename *fname,
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uint64_t *bsize,
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uint64_t *dfree,
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uint64_t *dsize)
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{
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const struct loadparm_substitution *lp_sub =
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loadparm_s3_global_substitution();
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uint64_t dfree_retval;
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uint64_t dfree_q = 0;
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uint64_t bsize_q = 0;
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uint64_t dsize_q = 0;
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const char *dfree_command;
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static bool dfree_broken = false;
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char *path = fname->base_name;
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(*dfree) = (*dsize) = 0;
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(*bsize) = 512;
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/*
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* If external disk calculation specified, use it.
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*/
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dfree_command = lp_dfree_command(talloc_tos(), lp_sub, SNUM(conn));
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if (dfree_command && *dfree_command) {
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const char *p;
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char **lines = NULL;
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char **argl = NULL;
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argl = str_list_make_empty(talloc_tos());
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str_list_add_printf(&argl, "%s", dfree_command);
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str_list_add_printf(&argl, "%s", path);
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if (argl == NULL) {
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return (uint64_t)-1;
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}
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DBG_NOTICE("Running command '%s %s'\n",
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dfree_command,
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path);
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lines = file_lines_ploadv(talloc_tos(), argl, NULL);
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TALLOC_FREE(argl);
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if (lines != NULL) {
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char *line = lines[0];
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DEBUG (3, ("Read input from dfree, \"%s\"\n", line));
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*dsize = STR_TO_SMB_BIG_UINT(line, &p);
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while (p && *p && isspace(*p))
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p++;
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if (p && *p)
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*dfree = STR_TO_SMB_BIG_UINT(p, &p);
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while (p && *p && isspace(*p))
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p++;
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if (p && *p)
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*bsize = STR_TO_SMB_BIG_UINT(p, NULL);
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else
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*bsize = 1024;
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TALLOC_FREE(lines);
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DEBUG (3, ("Parsed output of dfree, dsize=%u, dfree=%u, bsize=%u\n",
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(unsigned int)*dsize, (unsigned int)*dfree, (unsigned int)*bsize));
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if (!*dsize)
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*dsize = 2048;
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if (!*dfree)
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*dfree = 1024;
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goto dfree_done;
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}
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DBG_ERR("file_lines_load() failed for "
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"command '%s %s'. Error was : %s\n",
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dfree_command, path, strerror(errno));
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}
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if (SMB_VFS_DISK_FREE(conn, fname, bsize, dfree, dsize) ==
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(uint64_t)-1) {
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DBG_ERR("VFS disk_free failed. Error was : %s\n",
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strerror(errno));
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return (uint64_t)-1;
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}
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if (disk_quotas(conn, fname, &bsize_q, &dfree_q, &dsize_q)) {
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uint64_t min_bsize = MIN(*bsize, bsize_q);
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(*dfree) = (*dfree) * (*bsize) / min_bsize;
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(*dsize) = (*dsize) * (*bsize) / min_bsize;
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dfree_q = dfree_q * bsize_q / min_bsize;
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dsize_q = dsize_q * bsize_q / min_bsize;
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(*bsize) = min_bsize;
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(*dfree) = MIN(*dfree,dfree_q);
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(*dsize) = MIN(*dsize,dsize_q);
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}
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/* FIXME : Any reason for this assumption ? */
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if (*bsize < 256) {
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DEBUG(5,("disk_free:Warning: bsize == %d < 256 . Changing to assumed correct bsize = 512\n",(int)*bsize));
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*bsize = 512;
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}
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if ((*dsize)<1) {
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if (!dfree_broken) {
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DEBUG(0,("WARNING: dfree is broken on this system\n"));
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dfree_broken=true;
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}
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*dsize = 20*1024*1024/(*bsize);
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*dfree = MAX(1,*dfree);
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}
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dfree_done:
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disk_norm(bsize, dfree, dsize);
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if ((*bsize) < 1024) {
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dfree_retval = (*dfree)/(1024/(*bsize));
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} else {
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dfree_retval = ((*bsize)/1024)*(*dfree);
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}
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return(dfree_retval);
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}
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/****************************************************************************
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Potentially returned cached dfree info.
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Depending on the file system layout and file system features, the free space
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information can be different for different sub directories underneath a SMB
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share. Store the cache information in memcache using the query path as the
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key to accommodate this.
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****************************************************************************/
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struct dfree_cached_info {
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time_t last_dfree_time;
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uint64_t dfree_ret;
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uint64_t bsize;
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uint64_t dfree;
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uint64_t dsize;
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};
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uint64_t get_dfree_info(connection_struct *conn, struct smb_filename *fname,
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uint64_t *bsize, uint64_t *dfree, uint64_t *dsize)
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{
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int dfree_cache_time = lp_dfree_cache_time(SNUM(conn));
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struct dfree_cached_info *dfc = NULL;
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struct dfree_cached_info dfc_new = { 0 };
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uint64_t dfree_ret;
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char tmpbuf[PATH_MAX];
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char *full_path = NULL;
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char *to_free = NULL;
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char *key_path = NULL;
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size_t len;
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DATA_BLOB key, value;
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bool found;
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if (!dfree_cache_time) {
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return sys_disk_free(conn, fname, bsize, dfree, dsize);
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}
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len = full_path_tos(conn->connectpath,
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fname->base_name,
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tmpbuf,
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sizeof(tmpbuf),
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&full_path,
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&to_free);
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if (len == -1) {
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errno = ENOMEM;
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return -1;
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}
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if (VALID_STAT(fname->st) && S_ISREG(fname->st.st_ex_mode)) {
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/*
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* In case of a file use the parent directory to reduce number
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* of cache entries.
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*/
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bool ok;
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ok = parent_dirname(talloc_tos(),
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full_path,
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&key_path,
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NULL);
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TALLOC_FREE(to_free); /* We're done with full_path */
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if (!ok) {
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errno = ENOMEM;
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return -1;
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}
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/*
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* key_path is always a talloced object.
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*/
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to_free = key_path;
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} else {
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/*
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* key_path might not be a talloced object; rely on
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* to_free set from full_path_tos.
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*/
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key_path = full_path;
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}
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key = data_blob_const(key_path, strlen(key_path));
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found = memcache_lookup(smbd_memcache(),
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DFREE_CACHE,
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key,
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&value);
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dfc = found ? (struct dfree_cached_info *)value.data : NULL;
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if (dfc && (conn->lastused - dfc->last_dfree_time < dfree_cache_time)) {
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DBG_DEBUG("Returning dfree cache entry for %s\n", key_path);
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*bsize = dfc->bsize;
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*dfree = dfc->dfree;
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*dsize = dfc->dsize;
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dfree_ret = dfc->dfree_ret;
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goto out;
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}
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dfree_ret = sys_disk_free(conn, fname, bsize, dfree, dsize);
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if (dfree_ret == (uint64_t)-1) {
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/* Don't cache bad data. */
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goto out;
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}
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DBG_DEBUG("Creating dfree cache entry for %s\n", key_path);
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dfc_new.bsize = *bsize;
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dfc_new.dfree = *dfree;
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dfc_new.dsize = *dsize;
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dfc_new.dfree_ret = dfree_ret;
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dfc_new.last_dfree_time = conn->lastused;
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memcache_add(smbd_memcache(),
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DFREE_CACHE,
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key,
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data_blob_const(&dfc_new, sizeof(dfc_new)));
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out:
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TALLOC_FREE(to_free);
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return dfree_ret;
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}
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void flush_dfree_cache(void)
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{
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memcache_flush(smbd_memcache(), DFREE_CACHE);
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}
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